English

Learning the Integral Quadratic Constraints on Plant-Model Mismatch

Systems and Control 2025-02-04 v1 Systems and Control

Abstract

While a characterization of plant-model mismatch is necessary for robust control, the mismatch usually can not be described accurately due to the lack of knowledge about the plant model or the complexity of nonlinear plants. Hence, this paper considers this problem in a data-driven way, where the mismatch is captured by parametric forms of integral quadratic constraints (IQCs) and the parameters contained in the IQC equalities are learned from sampled trajectories from the plant. To this end, a one-class support vector machine (OC-SVM) formulation is proposed, and its generalization performance is analyzed based on the statistical learning theory. The proposed approach is demonstrated by a single-input-single-output time delay mismatch and a nonlinear two-phase reactor with a linear nominal model, showing accurate recovery of frequency-domain uncertainties.

Keywords

Cite

@article{arxiv.2502.00976,
  title  = {Learning the Integral Quadratic Constraints on Plant-Model Mismatch},
  author = {Wentao Tang},
  journal= {arXiv preprint arXiv:2502.00976},
  year   = {2025}
}

Comments

6 pages, 5 figures; submitted to the 9th IEEE Conference on Control Technology and Applications (CCTA 2025)

R2 v1 2026-06-28T21:29:50.441Z